Yu Jing

Yu Jing

Universität Leipzig

H-index: 30

Europe-Germany

About Yu Jing

Yu Jing, With an exceptional h-index of 30 and a recent h-index of 28 (since 2020), a distinguished researcher at Universität Leipzig, specializes in the field of 2D materials, energy storage, catalysis, first-principles calculations.

His recent articles reflect a diverse array of research interests and contributions to the field:

Liquid Exfoliated SnP3 Nanosheets for Very High Areal Capacity Lithium‐Ion Batteries

Conductive two-dimensional M 3 (C 6 S 3 O 3) 2 monolayers as effective electrocatalysts for the oxygen reduction reaction

Mo3 (C6X6) 2 (X= NH, S, O) monolayers: two-dimensional conductive metal–organic frameworks as effective electrocatalysts for the nitrogen reduction reaction

Rational design of two-dimensional binary polymers from heterotriangulenes for photocatalytic water splitting

Sb2TeSe2 Monolayers: Promising 2D Semiconductors for Highly Efficient Excitonic Solar Cells

Electrochemical synthesis of urea on MBenes

2D Honeycomb‐Kagome Polymer Tandem as Effective Metal‐Free Photocatalysts for Water Splitting

β-PdBi2 monolayer: two-dimensional topological metal with superior catalytic activity for carbon dioxide electroreduction to formic acid

Yu Jing Information

University

Position

___

Citations(all)

4829

Citations(since 2020)

3224

Cited By

2874

hIndex(all)

30

hIndex(since 2020)

28

i10Index(all)

40

i10Index(since 2020)

39

Email

University Profile Page

Google Scholar

Yu Jing Skills & Research Interests

2D materials

energy storage

catalysis

first-principles calculations

Top articles of Yu Jing

Liquid Exfoliated SnP3 Nanosheets for Very High Areal Capacity Lithium‐Ion Batteries

Advanced Energy Materials

2021/1

Conductive two-dimensional M 3 (C 6 S 3 O 3) 2 monolayers as effective electrocatalysts for the oxygen reduction reaction

Journal of Materials Chemistry A

2021

Mo3 (C6X6) 2 (X= NH, S, O) monolayers: two-dimensional conductive metal–organic frameworks as effective electrocatalysts for the nitrogen reduction reaction

Journal of Energy Chemistry

2021/10/1

Rational design of two-dimensional binary polymers from heterotriangulenes for photocatalytic water splitting

The Journal of Physical Chemistry Letters

2021/8/19

Sb2TeSe2 Monolayers: Promising 2D Semiconductors for Highly Efficient Excitonic Solar Cells

ACS omega

2021/7/27

Electrochemical synthesis of urea on MBenes

Nature Communications

2021/7/2

2D Honeycomb‐Kagome Polymer Tandem as Effective Metal‐Free Photocatalysts for Water Splitting

Advanced Materials

2021/5

β-PdBi2 monolayer: two-dimensional topological metal with superior catalytic activity for carbon dioxide electroreduction to formic acid

Materials Today Advances

2020/12/1

Making 2D topological polymers a reality

Nature materials

2020/8

Two-dimensional metal hexahydroxybenzene frameworks as promising electrocatalysts for an oxygen reduction reaction

ACS Sustainable Chemistry & Engineering

2020/4/23

Highly crystalline and semiconducting imine‐based two‐dimensional polymers enabled by interfacial synthesis

Angewandte Chemie International Edition

2020/1

Rational design of dual-metal-site catalysts for electroreduction of carbon dioxide

Journal of materials chemistry A

2020

See List of Professors in Yu Jing University(Universität Leipzig)

Co-Authors

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